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Dental pulp cells provide neurotrophic support for dopaminergic neurons and differentiate into neurons in vitro; implications for tissue engineering and repair in the nervous system

机译:牙髓细胞为多巴胺能神经元提供神经营养载体,并在体外分化为神经元;用于组织工程和修复神经系统的影响

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摘要

Glial cell line-derived neurotrophic factor (GDNF) mRNA is highly expressed by dental pulp cells (DPCs) prior to the initiation of dental pulp innervation. We show that radioactively labelled exogenous GDNF is retrogradely transported from neonatal teeth and vibrissae to the trigeminal neurons, indicating that GDNF acts as a classical neurotrophic factor in the trigeminal system. We also show that DPCs from both rats and humans produce nerve growth factor (NGF), brain-derived neurotrophic factor (BDNF) and GDNF mRNAs in vitro , promote the survival and phenotypic characteristics of embryonic dopaminergic (DA) neurons and protect DA neurons against the neurotoxin 6-hydroxy-dopamine (6-OHDA) in vitro . By using inhibitory antibodies to NGF, BDNF and GDNF, we show that the promotion of DA neuron survival relates to the production and release of neurotrophic proteins by DPCs in vitro . We suggest that in vivo production of neurotrophic factors by DPCs play roles in tooth innervation. However, continued production of neurotrophic factors by the DPCs might have wider implications. We propose that the dental pulp is a viable source of easily attainable cells with possible potential for development of autologous cell transplantation therapies. We also show that a population of neural crest-derived dental pulp cells acquire clear neuronal morphology and protein expression profile in vitro , indicating the presence of a cell population in the dental pulp with neuronal differentiation capacity that might provide additional benefits when grafted into the CNS.
机译:在启动牙髓纸浆支配过程之前,胶质细胞系衍生的神经营养因子(GDNF)mRNA高度表达牙髓细胞(DPC)。我们表明,放射性标记的外源GDNF从新生儿牙齿和vibrissae逆行地转发给三叉神经元,表明GDNF作为三叉系统中的经典神经营养因子。我们还表明,来自大鼠和人类的DPC在体外产生神经生长因子(NGF),脑衍生的神经营养因子(BDNF)和GDNF mRNA,促进胚胎多巴胺能(DA)神经元的存活率和表型特征,并保护DA神经元神经毒素6-羟基 - 多巴胺(6-OHDA)体外。通过使用对NGF,BDNF和GDNF的抑制抗体,我们表明DA神经元存活的促进涉及在体外通过DPC的神经营养蛋白的生产和释放。我们认为DPC在牙齿支配中的角色体内生产神经营养因素。然而,DPC的持续产生神经营养因素可能具有更广泛的影响。我们提出牙科纸浆是可容易获得的细胞的可行源,其可能潜力地发育自体细胞移植疗法。我们还表明,神经嵴衍生的牙髓细胞的群体在体外获取清晰的神经元形态和蛋白表达谱,表明牙髓中具有神经元分化能力的细胞群,当移植到CNS进入CNS时可能提供额外的益处。

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